2005-10-06 19:56:22 +02:00
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if ~defined mem_inc
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mem_inc_fix:
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mem_inc fix mem_inc_fix
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;include "memmanag.inc"
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;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
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;;High-level memory management in MenuetOS.
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;;It uses memory manager in memmanager.inc
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;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
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second_base_address=0xC0000000
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std_application_base_address=0x10000000
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general_page_table_ dd 0
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general_page_table=general_page_table_+second_base_address
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;-----------------------------------------------------------------------------
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create_general_page_table:
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;input
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; none
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;output
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; none
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;Procedure create general page directory and write
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;it address to [general_page_table].
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pushad
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mov eax,1 ;alloc 1 page
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mov ebx,general_page_table ;write address to [general_page_table]
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call MEM_Alloc_Pages ;allocate page directory
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mov eax,[general_page_table]
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call MEM_Get_Linear_Address ;eax - linear address of page directory
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mov edi,eax
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mov ebx,eax
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xor eax,eax
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mov ecx,4096/4
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cld
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rep stosd ;clear page directory
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mov eax,4
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mov edx,eax
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call MEM_Alloc_Pages ;alloc page tables for 0x0-0x1000000 region
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cmp eax,edx
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jnz $ ;hang if not enough memory
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;fill page tables
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xor esi,esi
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mov ebp,7
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.loop:
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;esi - number of page in page directory
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;ebp - current page address
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;ebx - linear address of page directory
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mov eax,[ebx+4*esi]
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add dword [ebx+4*esi],7 ;add flags to address of page table
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call MEM_Get_Linear_Address
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;eax - linear address of page table
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mov ecx,4096/4
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;ecx (counter) - number of pages in page table
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;current address=4Mb*esi
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cmp esi,2
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jz .start_lfb_map ;lfb map begin at 0x800000
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cmp esi,3
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jz .end_lfb_map ;lfb map end at 0xC00000
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jmp .loop1
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.start_lfb_map:
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;current address=lfb address
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mov ebp,[0x2f0000+0x9018]
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add ebp,7 ;add flags
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jmp .loop1
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.end_lfb_map:
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;current address=linear address
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mov ebp,12*0x100000+7
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.loop1:
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mov [eax],ebp ;write page address (with flags) in page table
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add eax,4
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add ebp,4096 ;size of page=4096 bytes
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loop .loop1
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inc esi ;next page directory entry
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cmp esi,edx
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jnz .loop
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;map region 0x80000000-0x803fffff to 0x800000-0xcfffff
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mov eax,1 ;size of the region is 4Mb so only 1 page table needed
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mov edx,ebx ;ebx still contains linear address of the page directory
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add ebx,0x800
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call MEM_Alloc_Pages ;alloc page table for the region
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mov eax,[ebx]
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add dword [ebx],7 ;add flags
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call MEM_Get_Linear_Address ;get linear address of the page table
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mov ebx,eax
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mov ecx,4096/4 ;number of pages in page table
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mov eax,8*0x100000+7
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.loop3:
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;ebx - linear address of page table
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;eax - current linear address with flags
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mov [ebx],eax
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add ebx,4
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add eax,4096
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loop .loop3
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;map region 0xC0000000-* to 0x0-*
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mov esi,edx ;esi=linear address of the page directory
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lea edi,[esi+(second_base_address shr 20)];add offset of entry (0xC00)
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mov ecx,4
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rep movsd ;first 16Mb of the region mapped as 0x0-0x1000000 block
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mov eax,[0xfe8c] ;eax=memory size
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add eax,0x3fffff
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shr eax,22
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mov esi,eax ;calculate number of entries in page directory
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sub esi,4 ;subtract entries for first 16Mb.
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mov ebp,0x1000000+7 ;start physical address with flags
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;mapping memory higher than 16Mb
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.loop4:
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;esi (counter) - number of entries in page directory
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;edi - address of entry
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test esi,esi
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jle .loop4end
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call MEM_Alloc_Page ;alloc page table for entry in page directory
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mov [edi],eax
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add dword [edi],7 ;write physical address of page table in page directory
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add edi,4 ;move entry pointer
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call MEM_Get_Linear_Address
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mov ecx,eax
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xor edx,edx
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.loop5:
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;ecx - linear address of page table
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;edx - index of page in page table
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;ebp - current mapped physical address with flags
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mov [ecx+4*edx],ebp ;write address of page in page table
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add ebp,0x1000 ;move to next page
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inc edx
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cmp edx,4096/4
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jl .loop5
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dec esi
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jmp .loop4
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.loop4end:
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.set_cr3:
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;set value of cr3 register to the address of page directory
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mov eax,[general_page_table]
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add eax,8+16 ;add flags
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mov cr3,eax ;now we have full access paging
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popad
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ret
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;-----------------------------------------------------------------------------
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simple_clone_cr3_table:
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;Parameters:
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; eax - physical address of cr3 table (page directory)
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;result:
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; eax - physical address of clone of cr3 table.
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;Function copy only page directory.
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push ecx
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push edx
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push esi
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push edi
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call MEM_Get_Linear_Address
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;eax - linear address of cr3 table
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mov esi,eax
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call MEM_Alloc_Page
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test eax,eax
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jz .failed
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;eax - physical address of new page diretory
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mov edx,eax
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call MEM_Get_Linear_Address
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mov edi,eax
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mov ecx,4096/4
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cld
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;esi - address of old page directory
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;edi - address of new page directory
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rep movsd ;copy page directory
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mov eax,edx
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.failed:
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pop edi
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pop esi
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pop edx
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pop ecx
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ret
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;-----------------------------------------------------------------------------
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create_app_cr3_table:
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;Parameters:
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; eax - slot of process (index in 0x3000 table)
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;result:
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; eax - physical address of table.
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;This function create page directory for new process and
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;write it physical address to offset 0xB8 of extended
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;process information.
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push ebx
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mov ebx,eax
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mov eax,[general_page_table]
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call simple_clone_cr3_table ;clone general page table
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shl ebx,8
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mov [second_base_address+0x80000+ebx+0xB8],eax ;save address of page directory
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pop ebx
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ret
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;-----------------------------------------------------------------------------
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get_cr3_table:
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;Input:
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; eax - slot of process
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;result:
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; eax - physical address of page directory
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shl eax,8 ;size of process extended information=256 bytes
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mov eax,[second_base_address+0x80000+eax+0xB8]
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ret
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;-----------------------------------------------------------------------------
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dispose_app_cr3_table:
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;Input:
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; eax - slot of process
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;result:
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; none
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;This procedure frees page directory,
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;page tables and all memory of process.
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pushad
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mov ebp,eax
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;ebp = process slot in the procedure.
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shl eax,8
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mov eax,[second_base_address+0x80000+eax+0xB8]
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mov ebx,eax
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;ebx = physical address of page directory
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call MEM_Get_Linear_Address
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mov edi,eax
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;edi = linear address of page directory
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mov eax,[edi+(std_application_base_address shr 20)]
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and eax,not (4096-1)
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call MEM_Get_Linear_Address
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mov esi,eax
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;esi = linear address of first page table
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;search threads
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; mov ecx,0x200
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xor edx,edx
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mov eax,0x2
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.loop:
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;eax = current slot of process
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mov ecx,eax
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shl ecx,5
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2005-11-07 16:50:30 +01:00
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cmp byte [second_base_address+0x3000+ecx+0xa],9 ;if process running?
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jz .next ;skip empty slots
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2005-10-06 19:56:22 +02:00
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shl ecx,3
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cmp [second_base_address+0x80000+ecx+0xB8],ebx ;compare page directory addresses
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jnz .next
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inc edx ;thread found
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.next:
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inc eax
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cmp eax,[0x3004] ;exit loop if we look through all processes
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jle .loop
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;edx = number of threads
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;our process is zombi so it isn't counted
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2005-11-16 16:39:04 +01:00
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cmp edx,1
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jg .threadsexists
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2005-10-06 19:56:22 +02:00
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;if there isn't threads then clear memory.
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add edi,std_application_base_address shr 20
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.loop1:
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;edi = linear address of current directory entry
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;esi = linear address of current page table
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test esi,esi
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jz .loop1end
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xor ecx,ecx
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.loop2:
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;ecx = index of page
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mov eax,[esi+4*ecx]
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test eax,eax
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jz .loopend ;skip empty entries
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and eax,not (4096-1) ;clear flags
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push ecx
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call MEM_Free_Page ;free page
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pop ecx
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.loopend:
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inc ecx
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cmp ecx,1024 ;there are 1024 pages in page table
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jl .loop2
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mov eax,esi
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call MEM_Free_Page_Linear ;free page table
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.loop1end:
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add edi,4 ;move to next directory entry
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mov eax,[edi]
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and eax,not (4096-1)
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call MEM_Get_Linear_Address
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mov esi,eax ;calculate linear address of new page table
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test edi,0x800
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jz .loop1 ;test if we at 0x80000000 address?
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and edi,not (4096-1) ;clear offset of page directory entry
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mov eax,edi
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call MEM_Free_Page_Linear ;free page directory
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popad
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ret
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.threadsexists: ;do nothing
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popad ;last thread will free memory
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ret
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;-----------------------------------------------------------------------------
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mem_alloc_specified_region:
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;eax - linear directory address
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;ebx - start address (aligned to 4096 bytes)
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;ecx - size in pages
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;result:
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; eax=1 - ok
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; eax=0 - failed
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;Try to alloc and map ecx pages to [ebx;ebx+4096*ecx) interval.
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pushad
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mov ebp,ebx ;save start address for recoil
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mov esi,eax
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.gen_loop:
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;esi = linear directory address
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;ebx = current address
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;ecx = remaining size in pages
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mov edx,ebx
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shr edx,22
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mov edi,[esi+4*edx] ;find directory entry for current address
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test edi,edi
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jnz .table_exists ;check if page table allocated
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call MEM_Alloc_Page ;alloc page table
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test eax,eax
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jz .failed
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mov [esi+4*edx],eax
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add dword [esi+4*edx],7 ;write it address with flags
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call MEM_Get_Linear_Address
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call mem_fill_page ;clear page table
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jmp .table_linear
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.table_exists:
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;calculate linear address of page table
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mov eax,edi
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and eax,not (4096-1) ;clear flags
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call MEM_Get_Linear_Address
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.table_linear:
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;eax = linear address of page table
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mov edx,ebx
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shr edx,12
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and edx,(1024-1) ;calculate index in page table
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mov edi,eax
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.loop:
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;edi = linear address of page table
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;edx = current page table index
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;ecx = remaining size in pages
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;ebx = current address
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test ecx,ecx
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jle .endloop1 ;all requested pages allocated
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call MEM_Alloc_Page ;alloc new page
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test eax,eax
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jz .failed
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mov [edi+4*edx],eax
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add dword [edi+4*edx],7 ;write it address with flags
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call MEM_Get_Linear_Address
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call mem_fill_page ;clear new page
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;go to next page table entry
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dec ecx
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add ebx,4096
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inc edx
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test edx,(1024-1)
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jnz .loop
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jmp .gen_loop
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.endloop1:
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popad
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mov eax,1 ;ok
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ret
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.failed:
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;calculate data for recoil
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sub ebx,ebp
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shr ebx,12
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mov ecx,ebx ;calculate number of allocated pages
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mov eax,esi ;restore linear address of page directory
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mov ebx,ebp ;restore initial address
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call mem_free_specified_region ;free all allocated pages
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popad
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xor eax,eax ;fail
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ret
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;-----------------------------------------------------------------------------
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mem_fill_page:
|
|
|
|
;Input:
|
|
|
|
; eax - address
|
|
|
|
;result:
|
|
|
|
; none
|
|
|
|
;set to zero 4096 bytes at eax address.
|
|
|
|
push ecx
|
|
|
|
push edi
|
|
|
|
mov edi,eax
|
|
|
|
mov ecx,4096/4
|
|
|
|
xor eax,eax
|
|
|
|
rep stosd
|
|
|
|
lea eax,[edi-4096]
|
|
|
|
pop edi
|
|
|
|
pop ecx
|
|
|
|
ret
|
|
|
|
;-----------------------------------------------------------------------------
|
|
|
|
mem_free_specified_region:
|
|
|
|
;eax - linear page directory address
|
|
|
|
;ebx - start address (aligned to 4096 bytes)
|
|
|
|
;ecx - size in pages
|
|
|
|
;result - none
|
|
|
|
;Free pages in [ebx;ebx+4096*ecx) region.
|
|
|
|
pushad
|
|
|
|
mov esi,eax
|
|
|
|
xor ebp,ebp
|
|
|
|
|
|
|
|
.gen_loop:
|
|
|
|
;esi = linear page directory address
|
|
|
|
;ebx = current address
|
|
|
|
;ecx = remaining pages
|
|
|
|
;ebp = 0 for first page table
|
|
|
|
; 1 otherwise
|
|
|
|
mov edx,ebx
|
|
|
|
shr edx,22
|
|
|
|
mov eax,[esi+4*edx] ;find directory entry for current address
|
|
|
|
and eax,not (4096-1)
|
|
|
|
test eax,eax
|
|
|
|
jnz .table_exists
|
|
|
|
;skip absent page tables
|
|
|
|
mov edx,ebx
|
|
|
|
shr edx,12
|
|
|
|
and edx,(1024-1) ;edx - index of current page
|
|
|
|
add ebx,1 shl 22
|
|
|
|
add ecx,edx
|
|
|
|
and ebx,not ((1 shl 22)-1)
|
|
|
|
mov ebp,1 ;set flag
|
|
|
|
sub ecx,1024 ;ecx=ecx-(1024-edx)
|
|
|
|
jg .gen_loop
|
|
|
|
popad
|
|
|
|
ret
|
|
|
|
.table_exists:
|
|
|
|
call MEM_Get_Linear_Address
|
|
|
|
;eax - linear address of table
|
|
|
|
mov edx,ebx
|
|
|
|
shr edx,12
|
|
|
|
and edx,(1024-1) ;edx - index of current page
|
|
|
|
mov edi,eax
|
|
|
|
|
|
|
|
.loop:
|
|
|
|
;edi = linear address of page table entry
|
|
|
|
;edx = index of page table entry
|
|
|
|
;ecx = remaining pages
|
|
|
|
test ecx,ecx
|
|
|
|
jle .endloop1
|
|
|
|
|
|
|
|
mov eax,[edi+4*edx]
|
|
|
|
and eax,not (4096-1)
|
|
|
|
call MEM_Free_Page ;free page
|
|
|
|
mov dword [edi+4*edx],0 ;and clear page table entry
|
|
|
|
dec ecx
|
|
|
|
inc edx
|
|
|
|
cmp edx,1024
|
|
|
|
jl .loop
|
|
|
|
|
|
|
|
test ebp,ebp
|
|
|
|
jz .first_page
|
|
|
|
mov eax,edi
|
|
|
|
call MEM_Free_Page_Linear ;free page table
|
|
|
|
mov edx,ebx
|
|
|
|
shr edx,22
|
|
|
|
mov dword [esi+4*edx],0 ;and clear page directory entry
|
|
|
|
.first_page:
|
|
|
|
add ebx,1 shl 22
|
|
|
|
and ebx,not ((1 shl 22)-1) ;calculate new current address
|
|
|
|
mov ebp,1 ;set flag
|
|
|
|
jmp .gen_loop
|
|
|
|
|
|
|
|
.endloop1:
|
|
|
|
popad
|
|
|
|
ret
|
|
|
|
end if
|